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Longitudinal spin polarization in a thermal model

机译:热模型中的纵向旋转极化

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We use a thermal model with single freeze-out to determine longitudinal polarization of A hyperons emitted from a hot and rotating hadronic medium. We consider the top RHIC energies and use the model parameters determined in the previous analyses of particle spectra and elliptic flow. Using a direct connection between the spin polarization tensor and thermal vorticity, we reproduce earlier results which indicate a quadrupole structure of the longitudinal component of the polarization three-vector with an opposite sign compared to that found in the experiment. We further use only the spatial components of the thermal vorticity in the laboratory system to define polarization and show that this leads to the correct sign and magnitude of the quadrupole structure. This procedure resembles a non-relativistic connection between the polarization three-vector and vorticity employed in other works. In general, our results bring further evidence that the spin polarization dynamics in heavy-ion collisions may be not directly related to the thermal vorticity. The additional material explains the construction of the hydrodynamically consistent gradients of fluid velocity and temperature in thermal models with the help of the perfect-fluid equations of motion.
机译:我们使用单次冻结的热模型来确定从热和旋转的HOTRONIC介质发出的超声的纵向极化。我们考虑顶部的RHIC能量,并使用先前分析粒子光谱和椭圆形流程中确定的模型参数。使用自旋极化张量和热涡度之间的直接连接,我们再现先前的结果,该结果表明了与实验中发现的相反标志的偏振三向量的纵向分量的四极结构。我们进一步仅使用实验室系统中热涡度的空间组分来定义极化,并显示这导致四极结构的正确符号和大小。该过程类似于其他作品中使用的偏振三向量和涡旋之间的非相对论连接。通常,我们的结果带来了进一步的证据表明重离子碰撞中的自旋极化动态可能与热涡度直接相关。附加材料通过运动的完美流体方程,解释了热模型中流体速度和温度的流体动力学一致的梯度的结构。

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